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Selecting the number and location of sources and receivers for non-linear time-domain inversion

机译:选择源和接收器的数量和位置以进行非线性时域反演

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The design of ultrasound scanning systems for breast cancer detection is a challenging task. To decide on the number of transducers and where to place them, several approaches could be followed. A simple and straightforward approach is to compute for several configurations the energy distribution in the region of interest, and treat each receiver as if it is a transmitter. In that case, the assumption is made that the effect a source or a receiver has on the resulting image is on an equal level. This assumption is mainly based on reciprocity; the observation that the response RAB measured by a receiver at the location B and for a transmitter at location A is identical to the response RBA obtained after interchanging the source and receiver. This is true for linear imaging methods, where a source can be interchanged with a receiver without affecting the resulting image. However, for the non-linear imaging method named Contrast Source Inversion (CSI), it does matter. In the past we showed that interchanging sources with receivers does affect the image. In this work, we evaluate the reciprocity property for the non-linear time-domain inversion (TDI). We show that the reciprocity principle is satisfied when using TDI for imaging, by using a synthetic experiment design.
机译:用于乳腺癌检测的超声扫描系统的设计是一个具有挑战性的任务。要决定传感器的数量以及放置它们的位置,可以遵循几种方法。一种简单而直接的方法是为若干配置计算感兴趣区域中的能量分布,并将每个接收器视为发射器。在这种情况下,假设源或接收器对所得到的图像具有相等的效果。这种假设主要基于互惠;观察到通过位置B处的接收器测量的响应rab和位置a处的发射器的响应rab与在源和接收器交换之后获得的响应RBA相同。对于线性成像方法,这是真的,其中源可以用接收器互换而不影响得到的图像。但是,对于命名对比源反转(CSI)的非线性成像方法,它确实很重要。在过去,我们展示了与接收器的互换源确实会影响图像。在这项工作中,我们评估了非线性时域反转(TDI)的互惠性属性。我们表明,使用合成实验设计使用TDI时,满足互惠原理。

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